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NIR spectroscopy on moving solids using a scanning grating spectrometer--impact on multivariate process analysis

机译:使用扫描光栅光谱仪对移动的固体进行近红外光谱分析-影响多变量过程分析

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摘要

The effect of sample movement on spectral response during fiber probe diffuse reflectance near-infrared spectrometry (NIR) sampling was characterized. This is of central importance in Process Analytical Chemistry (PAC) and Process Analytical Technology (PAT). The incitement to this study was the observation of spectral artifacts during measurements of powder samples in process streams when using a mechanically scanning spectrometer. Artifacts appeared as momentary changes in the spectral response during acquisition of a scan. These transitions emanatefrom continuous replacement of the sample subfraction seen by the probe and are typical for turbid media where sample properties may vary locally with respect to scattering and/or absorption. The impact on qualitative and quantitative analysis using chemometric methods such as principal component analysis (PCA) and partial least squares (PLS) regression was evaluated through experimental and theoretical simulations. It was generally found that spectra with the smallest residuals after projection onto the models came from non-moving samples or samples moving only slowly. It is shown that the magnitude of the spectral residuals is directly connected to the effective sample size, which relates both to sample speed as well as to the sample area presented to the probe. Implications for in-line/on-line process analysis of solids are discussed.
机译:表征了样品移动对光纤探针漫反射近红外光谱(NIR)采样过程中光谱响应的影响。这在过程分析化学(PAC)和过程分析技术(PAT)中至关重要。这项研究的动机是在使用机械扫描光谱仪测量过程流中的粉末样品期间观察光谱伪影。伪像表现为采集扫描过程中光谱响应的瞬时变化。这些转变源于探针观察到的样品亚组分的连续替换,并且对于混浊的介质是典型的,在混浊的介质中,样品的特性可能会相对于散射和/或吸收发生局部变化。通过实验和理论模拟,评估了使用化学计量方法(例如主成分分析(PCA)和偏最小二乘(PLS)回归)对定性和定量分析的影响。通常发现,投影到模型上后残留量最小的光谱来自非移动样本或移动缓慢的样本。结果表明,光谱残差的大小直接与有效样本大小相关,而有效样本大小与样本速度以及探针所占的样本面积都相关。讨论了对固体的在线/在线过程分析的含义。

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